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Citations to this article

Glucokinase and IRS-2 are required for compensatory β cell hyperplasia in response to high-fat diet–induced insulin resistance
Yasuo Terauchi, … , Ryozo Nagai, Takashi Kadowaki
Yasuo Terauchi, … , Ryozo Nagai, Takashi Kadowaki
Published January 2, 2007
Citation Information: J Clin Invest. 2007;117(1):246-257. https://doi.org/10.1172/JCI17645.
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Research Article Article has an altmetric score of 2

Glucokinase and IRS-2 are required for compensatory β cell hyperplasia in response to high-fat diet–induced insulin resistance

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Abstract

Glucokinase (Gck) functions as a glucose sensor for insulin secretion, and in mice fed standard chow, haploinsufficiency of β cell–specific Gck (Gck+/–) causes impaired insulin secretion to glucose, although the animals have a normal β cell mass. When fed a high-fat (HF) diet, wild-type mice showed marked β cell hyperplasia, whereas Gck+/– mice demonstrated decreased β cell replication and insufficient β cell hyperplasia despite showing a similar degree of insulin resistance. DNA chip analysis revealed decreased insulin receptor substrate 2 (Irs2) expression in HF diet–fed Gck+/– mouse islets compared with wild-type islets. Western blot analyses confirmed upregulated Irs2 expression in the islets of HF diet–fed wild-type mice compared with those fed standard chow and reduced expression in HF diet–fed Gck+/– mice compared with those of HF diet–fed wild-type mice. HF diet–fed Irs2+/– mice failed to show a sufficient increase in β cell mass, and overexpression of Irs2 in β cells of HF diet–fed Gck+/– mice partially prevented diabetes by increasing β cell mass. These results suggest that Gck and Irs2 are critical requirements for β cell hyperplasia to occur in response to HF diet–induced insulin resistance.

Authors

Yasuo Terauchi, Iseki Takamoto, Naoto Kubota, Junji Matsui, Ryo Suzuki, Kajuro Komeda, Akemi Hara, Yukiyasu Toyoda, Ichitomo Miwa, Shinichi Aizawa, Shuichi Tsutsumi, Yoshiharu Tsubamoto, Shinji Hashimoto, Kazuhiro Eto, Akinobu Nakamura, Mitsuhiko Noda, Kazuyuki Tobe, Hiroyuki Aburatani, Ryozo Nagai, Takashi Kadowaki

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 Total
Citations: 3 5 7 5 8 9 6 7 8 14 15 13 13 11 15 7 10 6 3 165
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2012 (11)

Title and authors Publication Year
Control of beta cell function and proliferation in mice stimulated by small-molecule glucokinase activator under various conditions
A Nakamura, Y Togashi, K Orime, K Sato, J Shirakawa, M Ohsugi, N Kubota, T Kadowaki, Y Terauchi
Diabetologia 2012
A Simple Matter of Life and Death—The Trials of Postnatal Beta-Cell Mass Regulation
E Tarabra, S Pelengaris, M Khan
International Journal of Endocrinology 2012
Chemical Methods to Induce Beta-Cell Proliferation
A Vetere, BK Wagner
International Journal of Endocrinology 2012
Neonatal β Cell Development in Mice and Humans Is Regulated by Calcineurin/NFAT
WR Goodyer, X Gu, Y Liu, R Bottino, GR Crabtree, SK Kim
Developmental Cell 2012
Chronic treatment with a glucokinase activator delays the onset of hyperglycaemia and preserves beta cell mass in the Zucker diabetic fatty rat
M Futamura, J Yao, X Li, R Bergeron, JL Tran, E Zycband, J Woods, Y Zhu, Q Shao, H Maruki-Uchida, H Goto-Shimazaki, RB Langdon, MD Erion, J Eiki, YP Zhou
Diabetologia 2012
Repair of diverse diabetic defects of β-cells in man and mouse by pharmacological glucokinase activation
NM Doliba, D Fenner, B Zelent, J Bass, R Sarabu, FM Matschinsky
Diabetes, Obesity and Metabolism 2012
Development of novel cell lines of diabetic dysfunction model fit for cell-based screening tests of medicinal materials
M Saito, A Hayakawa, N Inagaki, H Matsuoka
Cytotechnology 2012
Transient overexpression of cyclin D2/CDK4/GLP1 genes induces proliferation and differentiation of adult pancreatic progenitors and mediates islet regeneration
S Chen, M Shimoda, J Chen, S Matsumoto, PA Grayburn
Cell cycle (Georgetown, Tex.) 2012
Estimating hepatic glucokinase activity using a simple model of lactate kinetics
D Stefanovski, JH Youn, M Rees, RM Watanabe, M Ader, V Ionut, AU Jackson, M Boehnke, FS Collins, RN Bergman
Diabetes care 2012
Free Fatty Acids Block Glucose-Induced  -Cell Proliferation in Mice by Inducing Cell Cycle Inhibitors p16 and p18
J Pascoe, D Hollern, R Stamateris, M Abbasi, LC Romano, B Zou, CP O'Donnell, A Garcia-Ocana, LC Alonso
Diabetes 2012
Nutrient Excess Stimulates  -Cell Neogenesis in Zebrafish
LA Maddison, W Chen
Diabetes 2012

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